Wilczynska A, Aigueperse C, Kress M, Dautry F, Weil D
CNRS UPR1983, Institut André Lwoff, 7 rue Guy Moquet, 94801 Villejuif CEDEX, France.
J Cell Sci. 2005 Mar 1;118(Pt 5):981-92. doi: 10.1242/jcs.01692.
The cytoplasmic polyadenylation element-binding protein (CPEB) has been characterized in Xenopus laevis as a translational regulator. During the early development, it behaves first as an inhibitor and later as an activator of translation. In mammals, its closest homologue is CPEB1 for which two isoforms, short and long, have been described. Here we describe an additional isoform with a different RNA recognition motif, which is differentially expressed in the brain and ovary. We show that all CPEB1 isoforms are found associated with two previously described cytoplasmic structures, stress granules and dcp1 bodies. This association requires the RNA binding ability of the protein, whereas the Aurora A phosphorylation site is dispensable. Interestingly, the rck/p54 DEAD box protein, which is known as a CPEB partner in Xenopus and clam, and as a component of dcp1 bodies in mammals, is also present in stress granules. Both stress granules and dcp1 bodies are involved in mRNA storage and/or degradation, although so far no link has been made between the two, in terms of neither morphology nor protein content. Here we show that transient CPEB1 expression induces the assembly of stress granules, which in turn recruit dcp1 bodies. This dynamic connection between the two structures sheds new light on the compartmentalization of mRNA metabolism in the cytoplasm.
细胞质聚腺苷酸化元件结合蛋白(CPEB)在非洲爪蟾中已被鉴定为一种翻译调节因子。在早期发育过程中,它首先表现为翻译抑制剂,随后又作为翻译激活剂。在哺乳动物中,其最接近的同源物是CPEB1,已描述了它的两种异构体,即短异构体和长异构体。在此,我们描述了另一种具有不同RNA识别基序的异构体,它在大脑和卵巢中差异表达。我们发现所有CPEB1异构体都与两种先前描述的细胞质结构——应激颗粒和dcp1小体相关联。这种关联需要该蛋白的RNA结合能力,而极光激酶A磷酸化位点则是可有可无的。有趣的是,rck/p54 DEAD盒蛋白,在非洲爪蟾和蛤中它是CPEB的一个伴侣,在哺乳动物中是dcp1小体的一个组成部分,它也存在于应激颗粒中。应激颗粒和dcp1小体都参与mRNA的储存和/或降解,尽管到目前为止,在形态学和蛋白质含量方面,尚未在两者之间建立联系。在此我们表明,短暂的CPEB1表达会诱导应激颗粒的组装,而应激颗粒又会反过来募集dcp1小体。这两种结构之间的动态联系为细胞质中mRNA代谢的区室化提供了新的线索。